CN116211578A - Temperature stimulation gun - Google Patents

Temperature stimulation gun Download PDF

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Publication number
CN116211578A
CN116211578A CN202310257291.1A CN202310257291A CN116211578A CN 116211578 A CN116211578 A CN 116211578A CN 202310257291 A CN202310257291 A CN 202310257291A CN 116211578 A CN116211578 A CN 116211578A
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CN
China
Prior art keywords
stimulation
temperature
sleeve
gun
storage device
Prior art date
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Pending
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CN202310257291.1A
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Chinese (zh)
Inventor
王勇
王瑞
陈建军
葛亮
陆益民
邓华送
刘正士
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Hefei Bianri Medical Technology Co ltd
Hefei University of Technology
Original Assignee
Hefei Bianri Medical Technology Co ltd
Hefei University of Technology
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Application filed by Hefei Bianri Medical Technology Co ltd, Hefei University of Technology filed Critical Hefei Bianri Medical Technology Co ltd
Priority to CN202310257291.1A priority Critical patent/CN116211578A/en
Publication of CN116211578A publication Critical patent/CN116211578A/en
Pending legal-status Critical Current

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Abstract

The application provides a temperature stimulation gun, comprising a shell; the stimulation part is arranged at the front end of the shell, the stimulation part is of a hollow tubular structure, and one end of the stimulation part, which is far away from the shell, is closed to be used as a stimulation head; the stimulation component comprises a liquid storage device and a temperature control device; the liquid storage device is communicated with the inner cavity of the stimulation part, and liquid medium is filled in the inner cavities of the liquid storage device and the stimulation part; the temperature control device is arranged on the outer wall of the liquid storage device and is configured to regulate and control the temperature of the stimulation head by controlling the temperature of the liquid medium. When the temperature stimulation gun of the application is utilized to perform oral swallowing stimulation, the oral swallowing stimulation device has the characteristics of simplicity in operation, long service time, controllable temperature, safety and high efficiency.

Description

Temperature stimulation gun
Technical Field
The invention relates to the technical field of medical and nursing instruments, in particular to a temperature stimulation gun.
Background
Dysphagia affects the patient's feeding and requires immediate intervention to obtain the best recovery. The prior art for patients with oral dysphagia provides ice stimulation therapy that can improve dysphagia by enhancing swallowing reflex through repeated stimulation training.
The ice stimulation device that is released in the market at present, one mode is through changing the heat preservation liquid that the cotton swab dip in and carry out ice stimulation, and it is troublesome to change when using, and thawing time is fast, can not use for a long time to still there is the risk of choking water. Another method uses a heat conduction method of the heat conduction rod to perform ice stimulation, but the heat conduction rod is heated unevenly, the heat conduction effect is not ideal, and a certain risk exists. In addition, the existing ice stimulation device generally adopts a straight structure, and the outer shell of the straight structure can influence the visual field when being held by hands, so that the operation is inconvenient. Other temperature stimuli, including heat stimuli, also lack hand-held, portable products.
Disclosure of Invention
In view of the above problems in the prior art, an object of the present application is to provide a temperature stimulation gun to solve the above problems in the prior art.
To achieve the above and other related objects, the present invention provides a temperature stimulation gun comprising:
a housing;
the stimulation part is arranged at the front end of the shell, the stimulation part is of a hollow tubular structure, and one end of the stimulation part, which is far away from the shell, is closed to be used as a stimulation head;
the stimulation component is arranged in the shell and comprises a liquid storage device and a temperature control device;
the liquid storage device is communicated with the inner cavity of the stimulation part, and liquid medium is filled in the inner cavities of the liquid storage device and the stimulation part;
the temperature control device is arranged on the outer wall of the liquid storage device and is configured to regulate and control the temperature of the stimulation head by controlling the temperature of the liquid medium.
In an optional embodiment of the present application, the temperature control device includes a semiconductor temperature control sheet, and a heating surface or a cooling surface of the semiconductor temperature control sheet is attached to an outer wall of the liquid storage device.
In an optional embodiment of the present application, the temperature control device further includes a heat dissipating device, and the heat dissipating device is disposed on one of the heating surface and the cooling surface of the semiconductor temperature control sheet away from the liquid storage device.
In an alternative embodiment of the present application, the heat dissipating device includes a heat dissipating fin, and the heat dissipating fin is mounted on one of a heating surface and a cooling surface of the semiconductor temperature control fin, which is far away from the liquid storage device; or (b)
The heat dissipation device comprises a heat dissipation sheet and a fan, wherein the heat dissipation sheet is arranged on one of a heating surface and a cooling surface of the semiconductor temperature control sheet, which is far away from the liquid storage device, and the fan is arranged on one side of the heat dissipation sheet, which is far away from the semiconductor temperature control sheet; or (b)
The heat dissipation device comprises a liquid cooling unit, and the liquid cooling unit is arranged on one of the heating surface and the cooling surface of the semiconductor temperature control sheet, which is far away from the liquid storage device.
In an alternative embodiment of the present application, the temperature stimulation gun further includes a first heat insulation sleeve, wherein the first heat insulation sleeve is sleeved on the outer wall of the stimulation portion, and exposes the stimulation head.
In an alternative embodiment of the present application, the temperature stimulation gun further comprises a replaceable stimulation sleeve, the stimulation sleeve being disposed over the first insulating sleeve;
the stimulation sleeve is of a hollow tubular structure, and the head of the stimulation sleeve is in contact with the stimulation head, or a heat conduction layer is filled between the head of the stimulation sleeve and the stimulation head.
In an alternative embodiment of the present application, the temperature stimulation gun further comprises a replaceable stimulation sleeve, wherein the stimulation sleeve is sleeved on the stimulation part;
the stimulation sleeve is of a hollow tubular structure, and the head of the stimulation sleeve is in contact with the stimulation head, or a heat conduction layer is filled between the head of the stimulation sleeve and the stimulation head.
In an alternative embodiment of the present application, the temperature stimulation gun further comprises a second heat insulating sleeve, wherein the second heat insulating sleeve is sleeved on the stimulation sleeve, and the head of the stimulation sleeve is exposed.
In an alternative embodiment of the present application, the temperature stimulation gun further comprises a temperature sensor configured to detect a temperature of the liquid medium or a temperature of the stimulation portion.
In an alternative embodiment of the application, a handle is arranged below the shell, and a battery is arranged in the handle and is used for supplying power to an electric element in the temperature stimulation gun.
In an alternative embodiment of the present application, the temperature stimulation gun further comprises a display screen, and the display screen is disposed on the housing.
The invention has the beneficial effects that:
the utility model provides a temperature stimulation rifle adopts the stimulation portion of hollow tubular structure, the inner chamber and the stock solution device intercommunication of stimulation portion, through temperature control device control pack in stimulation portion with liquid medium in the stock solution device regulates and control the temperature of the stimulation head of stimulation portion realizes swallowing stimulating the training to the oral dysphagia patient, has easy operation, long service time, characteristics of temperature is controllable and safe efficient.
The temperature stimulation gun adopts the semiconductor temperature control sheet to control the temperature of the liquid medium filled in the stimulation part and the liquid storage device, and is automatic and efficient, simple to operate and free of water pollution.
The temperature stimulus rifle of this application can real-time perception liquid medium's temperature through temperature sensor, after the temperature reaches certain threshold value, can stop temperature control, guarantees that the temperature value of stimulus is in suitable temperature, guarantees the validity of stimulus and takes precautions against the danger of stimulus.
The temperature stimulation gun of the application uses the liquid medium as the medium to store energy, so that the temperature is more uniform, the energy storage time is longer, the temperature is also more favorably controlled, and the effectiveness and the safety of stimulation are ensured.
According to the temperature stimulation gun, the temperature control device adopts the semiconductor temperature control sheet, and the cold and hot change stimulation can be realized by switching the anode and the cathode of the power supply; through set up heat abstractor in temperature control device to can guarantee the effective cooling of semiconductor temperature control piece, ensure to satisfy the operating condition of semiconductor temperature control piece, reach better control by temperature change effect.
The temperature stimulation gun of this application, casing design are similar gun type structure, accord with ergonomic requirement for during the use, laborsaving, good grasp, shelter from less on operator's sight, can not influence user's field of vision, really be fit for the accurate stimulation to the oral cavity inside, carry the aspect, be fit for different places such as clinical and use.
According to the temperature stimulation gun, the flashlight is arranged at the front end of the shell, so that a user can be helped to observe the condition inside the oral cavity more clearly.
The temperature stimulation gun of this application through the removable stimulating sleeve of configuration outside the stimulating part, can carry out stimulating sleeve change to different patients to avoid producing mutual cross infection and health problem, and the stimulating sleeve after the change is more convenient for wash, and the individual of being convenient for is preserved and is maintained, multiple use.
The temperature stimulation gun can help a user to better grasp the temperature of the heat preservation liquid and the time information of stimulation through the display screen.
The temperature stimulus of this application adopts the fin to the radiating problem of semiconductor temperature accuse piece, fin and fan, perhaps liquid cooling unit as heat abstractor to through carrying out the heat dissipation design to the casing, can guarantee effectual cooling under the condition that does not influence the sight, ensure can satisfy the operating condition of semiconductor temperature accuse piece, reach better refrigeration or heating effect.
Drawings
Fig. 1 is a schematic perspective view of a temperature stimulation gun according to an embodiment of the invention.
Fig. 2 is a schematic view of a structure of a removed part of a housing of a temperature stimulation gun according to an embodiment of the invention.
Fig. 3 is a cross-sectional view of a stimulation portion in an embodiment of the invention.
Fig. 4 is a schematic structural diagram of a liquid storage device according to an embodiment of the invention.
Fig. 5 is a schematic diagram illustrating connection between the stimulation portion and the liquid storage device according to an embodiment of the invention.
FIG. 6 is a schematic perspective view of a temperature control device according to an embodiment of the invention.
Description of element numbers:
the device comprises a shell 10, a handle 11, a USB interface 12, a display screen 13, ventilation holes 14, a battery 16, a stimulation rod 20, a stimulation part 21, a stimulation head 211, a stimulation part body 212, a first heat insulation sleeve 22, a replaceable stimulation sleeve 23, a second heat insulation sleeve 24, a stimulation component 30, a liquid storage device 31, a liquid inlet and outlet 311, a temperature control device 32, a semiconductor temperature control sheet 321, a cooling fin 322, a fan 323, a mounting groove 33 and a lighting device 40.
Detailed Description
Other advantages and effects of the present invention will become apparent to those skilled in the art from the following disclosure, which describes the embodiments of the present invention with reference to specific examples. The invention may be practiced or carried out in other embodiments that depart from the specific details, and the details of the present description may be modified or varied from the spirit and scope of the present invention. It should be noted that the following embodiments and features in the embodiments may be combined with each other without conflict.
It should be noted that the illustrations provided in the following embodiments merely illustrate the basic concept of the present invention by way of illustration, and only the components related to the present invention are shown in the illustrations, not according to the number, shape and size of the components in actual implementation, and the form, number and proportion of each component in actual implementation may be arbitrarily changed, and the layout of the components may be more complex.
Dysphagia affects the patient's feeding and requires immediate intervention to obtain the best recovery. The prior art for patients with oral dysphagia provides ice stimulation therapy that can improve dysphagia by enhancing swallowing reflex through repeated stimulation training. The ice stimulation device that is released in the market at present, one mode is through changing the heat preservation liquid that the cotton swab dip in and carry out ice stimulation, and it is troublesome to change when using, and thawing time is fast, can not use for a long time to still there is the risk of choking water. Another method uses a heat conduction method of the heat conduction rod to perform ice stimulation, but the heat conduction rod is heated unevenly, the heat conduction effect is not ideal, and a certain risk exists. In addition, the existing ice stimulation device generally adopts a straight structure, and the outer shell of the straight structure can influence the visual field when being held by hands, so that the operation is inconvenient.
In view of the above-mentioned problems in the prior art, please refer to fig. 1 to 6, the present application provides a temperature stimulation gun. The temperature stimulation gun adopts a gun-type configuration, including a housing 10, a stimulation portion 21 (labeled as a whole with a stimulation rod 20 in fig. 1 and 2), and a stimulation assembly 30.
As shown in fig. 1 and 2, in the present embodiment, the housing 10 is used to mount the stimulation portion 21 and the stimulation assembly 30. The stimulation part 21 is used for performing ice/heat stimulation training on patients with oral dysphagia, the stimulation part 21 is mounted at the front end of the shell 10, the stimulation part 21 is of a hollow tubular structure, and one end of the stimulation part 21, which is far away from the shell 10, is closed to serve as a stimulation head 211. The stimulating assembly 30 is mounted in the housing 10, and the stimulating assembly 30 includes a liquid storage device 31 and a temperature control device 32. The liquid storage device 31 is communicated with the inner cavity of the stimulation portion 21, and the liquid medium is filled in the inner cavities of the liquid storage device 31 and the stimulation portion 21. The temperature control device 32 is disposed on the outer wall of the liquid storage device 31, and the temperature control device 32 is configured to regulate the temperature of the stimulation head 211 by controlling the temperature of the liquid medium, so as to perform ice/heat stimulation training on patients with oral dysphagia to enhance swallowing reflex and improve dysphagia.
The temperature stimulation gun of the embodiment adopts the stimulation part 21 with a hollow tubular structure, the inner cavity of the stimulation part 21 is communicated with the liquid storage device 31, the temperature of the stimulation head 211 of the stimulation part 21 is regulated and controlled by the temperature control device 32 to realize swallowing stimulation training of patients with dysphagia at the mouth through controlling the liquid medium filled in the stimulation part 21 and the liquid storage device 31, and the temperature stimulation gun has the characteristics of simplicity in operation, long service time, controllable temperature, safety and high efficiency.
As shown in fig. 1 and 2, in the present embodiment, the housing 10 is used to mount the stimulation portion 21 and the stimulation assembly 30. The housing 10 has a curved handle structure, i.e. a gun structure, and a handle 11 for holding is arranged at the lower part of the housing 10 in an extending manner. The housing 10 adopts a curved handle structure, which is convenient to hold and has better experience when in use compared with a straight structure in the prior art, and the visual field of a user is not influenced.
Through designing casing 10 to gun type structure, accord with ergonomic requirement for during the use, laborsaving, good grasp, it is less to shelter from on operator's sight, can not influence user's field of vision, really is fit for the accurate stimulation to the oral cavity inside, carries the aspect, is fit for different places such as clinical and uses.
The technical scheme of the invention will be described in detail below with reference to the accompanying drawings.
As shown in fig. 1-3, the stimulating part 21 is in a hollow tubular structure, the stimulating part 21 comprises a stimulating head 211 and a stimulating part body 212, one end of the stimulating part body 212 is connected with the stimulating head 211, and one end of the stimulating part body 212 far away from the stimulating head 211 penetrates from the front end opening of the shell 10 and is in sealing connection with the liquid inlet and outlet 311 of the liquid storage device 31, so that the liquid storage device 31 and the inner cavity of the stimulating part 21 can be filled with a liquid medium for heat exchange. Specifically, the whole of the stimulation portion 21 or at least the stimulation head 211 may be made of a material with high thermal conductivity, so that heat conduction can be better achieved. The stimulating head 211 has a semi-ellipsoidal structure, which can make the stimulus received by the patient more uniform. It will be appreciated that in other embodiments, the stimulation head 211 may be hemispherical or other suitable shape.
Referring to fig. 3, in this embodiment, the temperature stimulation gun further includes a first heat insulation sleeve 22, and the first heat insulation sleeve 22 is sleeved on the outer wall of the stimulation portion 21 and exposes the stimulation head 211. Specifically, the first heat insulation sleeve 22 is matched with the outer wall of the stimulation portion body 212, and the first heat insulation sleeve 22 is sleeved on the outer wall of the stimulation portion body 212, so that the stimulation head 211 is exposed to the outside, and the influence on use is avoided. The first heat insulating sleeve 22 can play a role in heat insulation. As an example, the first insulating sleeve 22 may be a silica gel material.
Referring to fig. 3, in this embodiment, the temperature stimulation gun may further include a replaceable stimulation sleeve 23, where the stimulation sleeve 23 is sleeved on the first heat insulation sleeve 22; the stimulating sleeve 23 is in a hollow tubular structure, the head of the stimulating sleeve 23 contacts with the stimulating head 211, and the tail end of the stimulating sleeve 23 can be clamped on the outer wall of the stimulating part 21 or the front end of the casing 10 in a fastening manner. The whole or at least the head of the stimulating sleeve 23 is made of a material with high heat conductivity, so that heat conduction can be better realized. It will be appreciated that the stimulation sheath 23 may completely encase the stimulation portion 21 or may partially encase the stimulation portion 21.
It should be noted that, in an alternative embodiment, the first heat insulation sleeve 22 may not be provided. When the first heat insulating jacket 22 is not provided, the stimulation jacket 23 may be directly sleeved on the stimulation portion main body 212.
In the actual use process, a stimulation sleeve 23 is arranged for each patient, and the stimulation sleeves are replaced for different patients, so that the cross infection and the sanitation problem between the patients are avoided, the replaced stimulation sleeves are more convenient to clean, and the stimulation sleeves are convenient for personal preservation and maintenance and are used for multiple times.
Referring to fig. 3, in this embodiment, the temperature stimulation gun may further include a second heat insulation sleeve 24, where the second heat insulation sleeve 24 is sleeved on the outer wall of the stimulation sleeve 23, and exposes the head of the stimulation sleeve 23. Specifically, the second heat insulation sleeve 24 is matched with the outer wall of the stimulation sleeve 23, and the second heat insulation sleeve 24 is sleeved on the outer wall of the stimulation sleeve 23 and ensures that the head of the stimulation sleeve 23 is exposed to the outside, so that ice/heat stimulation training is facilitated. The second heat insulating jacket 22 can further serve as heat insulation. As an example, the second insulating sleeve 24 may be a silica gel material.
As shown in fig. 2, in the present embodiment, the stimulating assembly 30 is installed in the housing 10, and the stimulating assembly 30 includes a liquid storage device 31 and a temperature control device 32. The liquid storage device 31 is communicated with the inner cavity of the stimulation portion 21, and the liquid medium is filled in the inner cavities of the liquid storage device 31 and the stimulation portion 21. The temperature control device 32 is disposed on the outer wall of the liquid storage device 31, and the temperature control device 32 is configured to regulate the temperature of the stimulation head 211 by controlling the temperature of the liquid medium, so as to perform ice/heat stimulation training on patients with oral dysphagia to enhance swallowing reflex and improve dysphagia. It is to be noted that the application adopts liquid medium to store energy, and has the characteristics of uniform temperature, longer energy storage time, contribution to temperature control and the like.
Specifically, as shown in fig. 4 and 5, the liquid storage device 31 is configured to store a liquid medium, and adopts a relatively thin flat box structure, and the outer walls of two sides of the liquid storage device 31 are recessed inward to form a mounting groove 33, where the mounting groove 33 is configured to mount the semiconductor temperature control wafer 321 of the temperature control device 32. The semiconductor temperature control sheets 321 at two sides of the liquid storage device 311 can be used for adjusting the temperature of the liquid medium in the liquid storage device 311, so that the temperature of the liquid medium in the stimulation part 21 can be adjusted by utilizing convection, thereby adjusting the temperature of the stimulation head 211, and further, the patient suffering from dysphagia can be subjected to ice/heat stimulation training to enhance the swallowing reflex and improve the dysphagia.
It is understood that the liquid storage device 31 may be formed with the mounting groove 33 recessed only on the outer wall of one side, so that the semiconductor temperature control chip 321 is disposed only on one side of the liquid storage device 31. The semiconductor temperature control chip 321 may be directly mounted on the outer surface of the liquid storage device 31 without providing the mounting groove 33 on the outer wall of the liquid storage device 31.
As shown in fig. 6, in the present embodiment, the temperature control device 32 may include a semiconductor temperature control chip 321. By adjusting the connection mode of the positive and negative electrodes of the two input ends of the semiconductor refrigerating sheet 321, the liquid medium stored in the liquid storage device 31 is rapidly cooled or heated by utilizing the characteristic that the semiconductor temperature control sheet 321 can rapidly refrigerate or heat, so that the temperature of the stimulation head 211 can be changed in a very short time, and ice/heat stimulation is formed. Specifically, the semiconductor temperature control chip includes two mounting grooves 33 respectively embedded in two side surfaces of the liquid storage device 311, and the semiconductor temperature control chip 321 is arranged on the liquid storage device 311 to rapidly cool or heat the liquid medium in the liquid storage device 31, so as to regulate the temperature of the stimulation head 211 in a very short time, and perform ice/heat stimulation training on patients with dysphagia to enhance swallowing reflex and improve dysphagia. The semiconductor temperature control chip 321 is used for controlling the temperature of the liquid medium filled in the stimulation part 21 and the liquid storage device 31, and the device is automatic and efficient, is simple to operate and has no water pollution.
In order to better realize heat conduction, so as to quickly cool or heat the liquid medium in the liquid storage device 31, a heat-conducting adhesive is coated between the semiconductor temperature control sheet 321 and the liquid storage device 31.
Since the semiconductor temperature control sheet 321 has the characteristics of cooling and heating at one side, if the heat generated by the heating surface or the heating surface cannot be effectively dissipated in time, the cooling or heating effect of the semiconductor temperature control sheet 321 is affected, and in order to enable the semiconductor temperature control sheet 321 to reach an effective temperature, it is necessary to adjust the temperature of one surface of the semiconductor temperature control sheet 321 away from the liquid storage device 31.
Based on this, referring to fig. 6, in the present application, the stimulating assembly 30 further includes a heat dissipating device disposed on one of the heating surface and the cooling surface of the semiconductor temperature control plate 321 away from the liquid storage device 31.
Specifically, the heat dissipating device includes a heat sink 322 and a fan 323, the heat sink 322 is mounted on one of the heating surface and the cooling surface of the semiconductor temperature control sheet 321, which is far away from the liquid storage device 31, and the fan 323 is mounted on one side of the heat sink 322, which is far away from the semiconductor temperature control sheet 321. The cooling or heating effect of the semiconductor temperature control sheet 321 near one surface of the liquid storage device 31 can be improved by adjusting the temperature of the semiconductor temperature control sheet 321 far from the one surface of the liquid storage device 31 by the fan 323 and the heat sink 322. In order to further increase the heat dissipation effect, as shown in fig. 1, ventilation holes 14 are formed on both sides of the housing 10, and the ventilation holes 14 are arranged for the fan 323, so that heat exchange with the outside can be better performed, and a surface of the semiconductor temperature control sheet 321 far away from the liquid storage device 31 is adjusted.
Optionally, the heat dissipating device may not be provided with a fan 323, and the heat dissipating fin 322 is mounted on one of the heating surface and the cooling surface of the semiconductor temperature control fin, which is far away from the liquid storage device, and contacts a side of the heat dissipating fin 322, which is far away from the semiconductor temperature control fin 321, with the housing, so that heat exchange is realized by the housing, and temperature adjustment of one surface of the semiconductor temperature control fin 321, which is far away from the liquid storage device 31 is realized.
Alternatively, the heat dissipation device may also adopt other forms of heat dissipation devices, for example, a liquid cooling unit may be selected, and the liquid cooling unit is disposed on one of the heating surface and the cooling surface of the semiconductor temperature control sheet, which is far away from the liquid storage device.
In this embodiment, the temperature control is performed more preferably. The temperature stimulation gun further includes a temperature sensor (not shown) configured to detect a temperature of the liquid medium or a temperature of the stimulation portion. The temperature sensor may be disposed in the inner cavity of the stimulation portion 21 or the inner cavity of the liquid storage device 31 to be in contact with the liquid medium to directly measure the temperature of the liquid medium, or may be disposed at a suitable position outside the outer wall of the stimulation portion 21 or the inner cavity of the liquid storage device 31 to indirectly measure the temperature of the liquid medium. The temperature sensor can sense the temperature of the liquid medium in real time, and after the temperature reaches a certain threshold value, the temperature control can be stopped, so that the temperature value of the stimulus is ensured to be at a proper temperature, the effectiveness of the stimulus is ensured, and the danger of the stimulus is prevented.
It should be noted that, in this embodiment, in order to better implement man-machine interaction, referring to fig. 1 and 2, the temperature stimulation gun further includes a display screen 13, where the display screen 13 is configured to display information such as temperature and electric quantity detected by the sensor, and a control interface. The display 13 may be disposed at the rear end of the housing 10, for example, so as to be easily viewed by a user. Of course, the display 13 may be disposed at other suitable positions of the housing 10.
Referring to fig. 2, the temperature stimulation gun further includes an illumination device 40, where the illumination device 40 is disposed at the front end of the housing 10. By providing the illumination device 40, the inside of the oral cavity can be seen more clearly during use.
Referring to fig. 2, the temperature stimulation gun further includes a battery 16 for supplying power to the power-consuming components in the temperature stimulation gun, and the battery 16 is disposed in the handle 11. The battery 16 may be, for example, a rechargeable battery, and is charged through the USB interface 12 provided on the housing 10.
In order to enable those skilled in the art to better understand the temperature stimulation gun provided in the present application, a description will now be made of a method for using the temperature stimulation gun provided in the present application:
after the temperature stimulation gun is electrified, an ice stimulation or thermal stimulation mode is selected, the semiconductor temperature control sheet 321 starts to rapidly cool or heat the liquid medium in the liquid storage device 31, and after the temperature of the liquid medium is reduced (raised) to a proper value, the temperature control device 32 stops working, so that ice stimulation or thermal stimulation training can be performed on patients with dysphagia.
To sum up, the temperature stimulation gun of this application adopts the stimulation portion of hollow tubular structure, and the inner chamber and the stock solution device intercommunication of stimulation portion, through temperature control device control pack in stimulation portion with the interior liquid medium of stock solution device regulates and control the temperature of the stimulation head of stimulation portion realizes swallowing stimulus training to the oral dysphagia patient, has easy operation, long service time, characteristics of temperature controllability and safe high-efficient. The temperature stimulation gun adopts the semiconductor temperature control sheet to control the temperature of the liquid medium filled in the stimulation part and the liquid storage device, and is automatic and efficient, simple to operate and free of water pollution. The temperature stimulus rifle of this application can real-time perception liquid medium's temperature through temperature sensor, after the temperature reaches certain threshold value, can stop temperature control, guarantees that the temperature value of stimulus is in suitable temperature, guarantees the validity of stimulus and takes precautions against the danger of stimulus. The temperature stimulation gun of the application uses the liquid medium as the medium to store energy, so that the temperature is more uniform, the energy storage time is longer, the temperature is also more favorably controlled, and the effectiveness and the safety of stimulation are ensured. According to the temperature stimulation gun, the temperature control device adopts the semiconductor temperature control sheet, and the cold and hot change stimulation can be realized by switching the anode and the cathode of the power supply; through set up heat abstractor in temperature control device to can guarantee the effective cooling of semiconductor temperature control piece, ensure to satisfy the operating condition of semiconductor temperature control piece, reach better control by temperature change effect. The temperature stimulation gun of this application, casing and stimulating part constitute like rifle formula structure, accord with ergonomic requirement for during the use, laborsaving, good grasp, shelter from on operator's sight is less, can not influence user's field of vision, really is fit for the accurate stimulation to the oral cavity inside, carries the aspect, is fit for different places such as clinical and uses. According to the temperature stimulation gun, the flashlight is arranged at the front end of the shell, so that a user can be helped to observe the condition inside the oral cavity more clearly. The temperature stimulation gun of this application through the removable stimulating sleeve of configuration outside the stimulating part, can carry out stimulating sleeve change to different patients to avoid producing mutual cross infection and health problem, and the stimulating sleeve after the change is more convenient for wash, and the individual of being convenient for is preserved and is maintained, multiple use. The temperature stimulation gun can help a user to better grasp the temperature of the heat preservation liquid and the time information of stimulation through the display screen.
The temperature stimulation gun of the present application may be applied to other suitable aspects requiring temperature stimulation, in addition to dysphagia stimulation.
In the description herein, numerous specific details are provided, such as examples of components and/or methods, to provide a thorough understanding of embodiments of the invention. One skilled in the relevant art will recognize, however, that an embodiment of the invention can be practiced without one or more of the specific details, or with other apparatus, systems, components, methods, components, materials, parts, and so forth. In other instances, well-known structures, materials, or operations are not specifically shown or described in detail to avoid obscuring aspects of embodiments of the invention.
Reference throughout this specification to "one embodiment," "an embodiment," or "a particular embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment, and not necessarily all embodiments, of the present invention. Thus, the appearances of the phrases "in one embodiment," "in an embodiment," or "in a specific embodiment" in various places throughout this specification are not necessarily all referring to the same embodiment. Furthermore, the particular features, structures, or characteristics of any specific embodiment of the present invention may be combined in any suitable manner with one or more other embodiments. It will be appreciated that other variations and modifications of the embodiments of the invention described and illustrated herein are possible in light of the teachings herein and are to be considered as part of the spirit and scope of the invention.
It will also be appreciated that one or more of the elements shown in the figures may also be implemented in a more separated or integrated manner, or even removed because of inoperability in certain circumstances or provided because it may be useful depending on the particular application.
In addition, any labeled arrows in the drawings/figures should be considered only as exemplary, and not limiting, unless otherwise specifically indicated. Furthermore, the term "or" as used herein is generally intended to mean "and/or" unless specified otherwise. Combinations of parts or steps will also be considered as being noted where terminology is foreseen as rendering the ability to separate or combine is unclear.
As used in the description herein and throughout the claims that follow, unless otherwise indicated, "a", "an", and "the" include plural references. Also, as used in the description herein and throughout the claims that follow, unless otherwise indicated, the meaning of "in …" includes "in …" and "on …".
The above description of illustrated embodiments of the invention, including what is described in the abstract, is not intended to be exhaustive or to limit the invention to the precise forms disclosed herein. Although specific embodiments of, and examples for, the invention are described herein for illustrative purposes only, various equivalent modifications are possible within the spirit and scope of the present invention, as those skilled in the relevant art will recognize and appreciate. As noted, these modifications can be made to the present invention in light of the foregoing description of illustrated embodiments of the present invention and are to be included within the spirit and scope of the present invention.
The systems and methods have been described herein in general terms as being helpful in understanding the details of the present invention. Furthermore, various specific details have been set forth in order to provide a thorough understanding of embodiments of the invention. One skilled in the relevant art will recognize, however, that an embodiment of the invention can be practiced without one or more of the specific details, or with other apparatus, systems, assemblies, methods, components, materials, parts, and/or the like. In other instances, well-known structures, materials, and/or operations are not specifically shown or described in detail to avoid obscuring aspects of embodiments of the invention.
Thus, although the invention has been described herein with reference to particular embodiments thereof, a latitude of modification, various changes and substitutions are intended in the foregoing disclosures, and it will be appreciated that in some instances some features of the invention will be employed without a corresponding use of other features without departing from the scope and spirit of the invention as set forth. Therefore, many modifications may be made to adapt a particular situation or material to the essential scope and spirit of the present invention. It is intended that the invention not be limited to the particular terms used in following claims and/or to the particular embodiment disclosed as the best mode contemplated for carrying out this invention, but that the invention will include any and all embodiments and equivalents falling within the scope of the appended claims. Accordingly, the scope of the invention should be determined only by the following claims.

Claims (10)

1. A temperature stimulation gun, comprising:
a housing;
the stimulation part is arranged at the front end of the shell, the stimulation part is of a hollow tubular structure, and one end of the stimulation part, which is far away from the shell, is closed to be used as a stimulation head;
the stimulation component is arranged in the shell and comprises a liquid storage device and a temperature control device;
the liquid storage device is communicated with the inner cavity of the stimulation part, and liquid medium is filled in the inner cavities of the liquid storage device and the stimulation part;
the temperature control device is arranged on the outer wall of the liquid storage device and is configured to regulate and control the temperature of the stimulation head by controlling the temperature of the liquid medium.
2. The temperature stimulation gun of claim 1, wherein the temperature control device comprises a semiconductor temperature control sheet, and a heating surface or a cooling surface of the semiconductor temperature control sheet is attached to an outer wall of the liquid storage device.
3. The temperature stimulation gun of claim 2, wherein the temperature control device further comprises a heat sink disposed on one of the heating surface and the cooling surface of the semiconductor temperature control sheet remote from the liquid storage device.
4. A temperature-stimulation gun according to claim 3, wherein,
the heat dissipation device comprises a heat dissipation fin, wherein the heat dissipation fin is arranged on one of a heating surface and a cooling surface of the semiconductor temperature control fin, which is far away from the liquid storage device; or (b)
The heat dissipation device comprises a heat dissipation sheet and a fan, wherein the heat dissipation sheet is arranged on one of a heating surface and a cooling surface of the semiconductor temperature control sheet, which is far away from the liquid storage device, and the fan is arranged on one side of the heat dissipation sheet, which is far away from the semiconductor temperature control sheet; or (b)
The heat dissipation device comprises a liquid cooling unit, and the liquid cooling unit is arranged on one of the heating surface and the cooling surface of the semiconductor temperature control sheet, which is far away from the liquid storage device.
5. The temperature stimulation gun of claim 1, further comprising a first heat shield sleeve disposed over an outer wall of the stimulation portion and exposing the stimulation head.
6. The temperature stimulation gun of claim 5 further comprising a replaceable stimulation sleeve, the stimulation sleeve being disposed over the first insulating sleeve;
the stimulation sleeve is of a hollow tubular structure, and the head of the stimulation sleeve is in contact with the stimulation head, or a heat conduction layer is filled between the head of the stimulation sleeve and the stimulation head.
7. The temperature stimulation gun of claim 1, further comprising a replaceable stimulation sleeve over the stimulation portion;
the stimulation sleeve is of a hollow tubular structure, and the head of the stimulation sleeve is in contact with the stimulation head, or a heat conduction layer is filled between the head of the stimulation sleeve and the stimulation head.
8. The temperature stimulation gun of claim 6 or 7, further comprising a second insulating sleeve over the stimulation sleeve and exposing a head of the stimulation sleeve.
9. The temperature stimulation gun of claim 1, further comprising a temperature sensor configured to detect a temperature of the liquid medium or a temperature of the stimulation portion.
10. The temperature stimulation gun of claim 1, wherein a handle is provided below the housing, a battery is provided in the handle, and the battery is used for supplying power to an electrical component in the temperature stimulation gun.
CN202310257291.1A 2023-03-14 2023-03-14 Temperature stimulation gun Pending CN116211578A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202310257291.1A CN116211578A (en) 2023-03-14 2023-03-14 Temperature stimulation gun

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202310257291.1A CN116211578A (en) 2023-03-14 2023-03-14 Temperature stimulation gun

Publications (1)

Publication Number Publication Date
CN116211578A true CN116211578A (en) 2023-06-06

Family

ID=86582398

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202310257291.1A Pending CN116211578A (en) 2023-03-14 2023-03-14 Temperature stimulation gun

Country Status (1)

Country Link
CN (1) CN116211578A (en)

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